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Coating slurry for prestressed reinforcement of architectural ceramics, preparation method thereof, and architectural ceramic products

A building ceramics and prestressing technology, applied in the field of building ceramics materials, can solve the problems that it is difficult to control the force of ceramic materials, and the prestressing method cannot meet the technical requirements of building ceramics materials, so as to speed up the construction, preparation and production of ecological civilization. Application production is simple and easy to control, and the effect of improving strength

Active Publication Date: 2019-11-05
JINGDEZHEN CERAMIC UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0008] However, the above-mentioned methods are difficult to control the demand of ceramic materials, especially for architectural ceramic materials with large quantities and wide areas. The existing prestressing methods cannot meet the technical requirements of architectural ceramic materials.

Method used

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  • Coating slurry for prestressed reinforcement of architectural ceramics, preparation method thereof, and architectural ceramic products
  • Coating slurry for prestressed reinforcement of architectural ceramics, preparation method thereof, and architectural ceramic products
  • Coating slurry for prestressed reinforcement of architectural ceramics, preparation method thereof, and architectural ceramic products

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Embodiment Construction

[0030] An embodiment of the present invention is a coating slurry for prestressed reinforcement of architectural ceramics, which is composed of aggregate and binder according to the weight ratio of aggregate: binder = 1:4-8. Among them, the aggregate is a combination of oxides, hydroxides, and oxygen-containing salts of Si, Al, Mg, Ca, and Zn. Specifically, the composition of the aggregate is SiO in parts by weight. 2 Chemically pure and / or quartz 10-60, Al 2 o 3 Chemically pure 10~15, dolomite 0~45, CaCO 3 Chemically pure 0-35, calcite 0-35, calcined zinc oxide 1-5; the binder is one of CMC, PVA, PVB, water glass or a combination thereof. The composition of the coating slurry of each embodiment is shown in Table 1.

[0031] Table 1 Raw material composition (parts by weight) of the coating slurry of each embodiment of the present invention

[0032]

[0033] Note: SiO 2 、Al 2 o 3 , CaCO 3 , calcined zinc oxide are chemically pure

[0034] The preparation method of c...

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Abstract

The invention discloses coating slurry for enhancing prestress of a building ceramic. The coating slurry consists of aggregate and an adhesive in a weight ratio of 1 to 4, wherein the aggregate is a combination of oxides, hydroxides and oxygen containing salts of Si, Al, Mg, Ca and Zn; the aggregate comprises the following chemical components: 50-75% of SiO2, 10-30% of Al2O3, 0-20% of MgO, 0-25% of CaO and 0-10% of ZnO; the adhesive is one or a combination of CMC (Carboxy Methyl Cellulose Sodium), PVA (Polyvinyl Acetate), PVB (Polyvinyl Butyral) and sodium silicate. In addition, the inventionfurther discloses a preparation method and a building ceramic product of the coating slurry. The coating slurry disclosed by the invention is adopted to completely coat the surface of a building ceramic blank, by exerting prestress, the strain that the ceramic blank is stressed and broken is increased, so that the strength and the performance of the building ceramic product can be greatly improved. The preparation and the application of the coating slurry are simple in production, easy to control, low in cost and beneficial to popularization and application, and have very high practical valuesand application prospects.

Description

technical field [0001] The invention relates to the technical field of building ceramic materials, in particular to a coating slurry for enhancing the strength of building ceramic materials, a preparation method thereof and building ceramic products. Background technique [0002] The annual output of architectural ceramics in my country has reached 11.7 billion square meters, and the annual sales output value has exceeded 500 billion yuan. However, the architectural ceramics industry belongs to the "three high industries" of high pollution, high energy consumption, and high resource consumption. Among them, the thinning of ceramic materials is an effective means to reduce energy consumption, but after the green body is thinned, both the green body strength and the porcelain strength will decrease significantly, resulting in cracking or deformation of the product. Therefore, improving the mechanical strength of architectural ceramic products is one of the problems that need t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B33/16C04B33/13C04B33/04C04B41/81
CPCC04B33/04C04B33/13C04B33/16C04B41/5049C04B41/81C04B2235/96C04B41/5035C04B41/5031C04B41/5027C04B41/4869C04B41/45C04B41/0072C04B41/4873
Inventor 李月明包亦望孙熠
Owner JINGDEZHEN CERAMIC UNIV
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